Temperature Sensors - Thermostats - Mechanical

Image Part Number Description / PDF Quantity Rfq
CS707525Y

CS707525Y

Cantherm

THERMOSTAT 75DEG C SPST-NC CYL

138

CS703515Y

CS703515Y

Cantherm

THERMOSTAT 35DEG C SPST-NO CYL

676

CS708025Z

CS708025Z

Cantherm

THERMOSTAT 80DEG C SPST-NC CYL

393

T22A12005DFFBG0E

T22A12005DFFBG0E

Cantherm

THERMOSTAT 120DEG C SPST-NC WIRE

61

F20A070051ZA0060

F20A070051ZA0060

Cantherm

THERMOSTAT 70DEG C SPST-NC 2SIP

909

F20A135053600060

F20A135053600060

Cantherm

THERMOSTAT 135DEG C SPST-NC 2SIP

0

MQT8K037XB

MQT8K037XB

Cantherm

THERMOSTAT 37DEG C SPST-NC RECT

15

B12B09005AEDA0GE

B12B09005AEDA0GE

Cantherm

THERMOSTAT 90DEG C SPST-NO RAD

0

F20A090051ZA0060

F20A090051ZA0060

Cantherm

THERMOSTAT 90DEG C SPST-NC 2SIP

0

B12A15005DEDB0GE

B12A15005DEDB0GE

Cantherm

THERMOSTAT 150DEG C SPST-NC WIRE

425

F20A100053600060

F20A100053600060

Cantherm

THERMOSTAT 100DEG C SPST-NC 2SIP

583

F20A13505ACFA06E

F20A13505ACFA06E

Cantherm

THERMOSTAT 135DEG C SPST-NC WIRE

1176

CS707015Y

CS707015Y

Cantherm

THERMOSTAT 70DEG C SPST-NO CYL

258

F20A150051ZA0060

F20A150051ZA0060

Cantherm

THERMOSTAT 150DEG C SPST-NC 2SIP

0

CS708015Z

CS708015Z

Cantherm

THERMOSTAT 80DEG C SPST-NO CYL

0

F20B09005ACFA06E

F20B09005ACFA06E

Cantherm

THERMOSTAT 90DEG C SPST-NO WIRE

115

F20B140053600060

F20B140053600060

Cantherm

THERMOSTAT 140DEG C SPST-NO 2SIP

0

F20B160051ZA0060

F20B160051ZA0060

Cantherm

THERMOSTAT 160DEG C SPST-NO 2SIP

0

CS709025Z

CS709025Z

Cantherm

THERMOSTAT 90DEG C SPST-NC CYL

982

CS710015Z

CS710015Z

Cantherm

THERMOSTAT 100DEG C SPST-NO CYL

0

Temperature Sensors - Thermostats - Mechanical

1. Overview

Mechanical temperature sensors and thermostats are electromechanical devices that detect temperature changes through physical deformation or phase-state variations. They convert thermal energy into mechanical displacement to trigger switching actions. These components remain critical in temperature regulation systems where reliability, cost-effectiveness, and simplicity are prioritized over digital precision. Their importance persists in industrial, automotive, and household applications despite advancements in electronic sensors.

2. Main Types & Functional Classification

TypeFunctional CharacteristicsApplication Examples
Bimetallic StripUses differential expansion of two metal alloys to bend at specific temperaturesHVAC systems, electric kettles, space heaters
Gas/Vapor-PressureOperates via pressure changes in sealed gas-filled capsulesRefrigeration systems, industrial ovens
Fluid ExpansionRelies on liquid/wax volume changes to actuate mechanical switchesAutomotive engines, radiator systems
Mercury BulbUses mercury's conductivity and thermal expansion for precise switchingMedical equipment, laboratory incubators

3. Structure & Components

Typical construction includes: - Sensing Element: Bimetallic strip, liquid-filled bulb, or gas capsule - Actuation Mechanism: Spring-loaded contacts or mercury tilt switches - Adjustment System: Calibrated springs or set-point knobs - Enclosure: Metal/aluminum housing for thermal conductivity - Electrical Contacts: Silver-nickel or gold-plated terminals

4. Key Technical Specifications

ParameterDescriptionImportance
Temperature RangeOperating limits (-50 C to 300 C typical)Determines application suitability
Accuracy 2 C to 10 C depending on designProcess control reliability
Response Time5-60 secondsSystem reaction speed
Switching Current1-15A ratingsLoad compatibility
Environmental RatingIP54 to IP67 protectionOperational durability

5. Application Fields

  • Industrial: Furnace temperature control, pipeline monitoring
  • Residential: Water heater regulation, HVAC systems
  • Commercial: Refrigeration units, coffee machines
  • Automotive: Engine coolant management, cabin climate control
  • Medical: Incubator temperature maintenance

Case Example: Automotive engines use wax pellet thermostats to regulate coolant flow, maintaining optimal operating temperatures between 90-105 C.

6. Leading Manufacturers

ManufacturerKey ProductsSpecial Features
HoneywellT6000 seriesAdjustable hysteresis, IP65 rating
OMRONE5CC Temperature ControllerDigital display with mechanical backup
TE ConnectivityMA320-12High-vibration resistance design
DanfossKPI 316EFood processing compliant materials

7. Selection Guidelines

Key considerations:

  • Environmental conditions (vibration, humidity, chemical exposure)
  • Required temperature range and switching accuracy
  • Electrical load specifications
  • Actuation speed requirements
  • Mounting configuration and space constraints
  • Regulatory compliance (UL, CSA, CE)

8. Industry Trends

Current developments include: - Hybrid systems integrating mechanical sensors with digital interfaces - Miniaturization for portable device integration - Enhanced materials for extreme temperature applications - Wireless-enabled mechanical-electronic combined systems - Improved hysteresis control for energy-efficient systems

Market projections indicate sustained demand in industrial sectors, with a 3.2% CAGR expected through 2030 despite increasing digital competition.

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